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Optimization of Micro Processes in Fine Particle Agglomeration By
Pelleting Flocculatio

Inglese · Copertina rigida

Spedizione di solito entro 1 a 3 settimane

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Informationen zum Autor Benjamin Oyegbile is currently a Research Assistant at the Chair of Minerals Processing, Brandenburg Technical University Cottbus-Senftenberg Germany. His research interest is in the field of residuals and biogenic waste processing, as well as water and natural resource management. He is a member of several professional association such as International Solid Waste Association (ISWA) and American Water Works Association (AWWA). Zusammenfassung Efficient particle separation in order to meet stringent regulatory standards represent one of the biggest challenges facing the process industry operators today. Emerging environmental problems such as climate change, population growth and natural resource depletion make it more compelling to undertake research into alternative phase separation techniques and optimization of existing ones. Meeting this challenge requires innovative, revolutionary and integrated approach in the design and optimization of various unit processes in fine particle separation. Flocculation is widely used as an effective phase separation technique across many process industries such as water and wastewater treatment and in minerals processing. In this work, a new pre-treatment technique was developed using a patented bench scale reactor unit as a technical proof of concept. Furthermore, the book provides a valuable insight into the hydrodynamics and fluid-particle interactions within the agglomeration units. The relatively high solids content of the stable pellets (approximately 30 %) and very low residual turbidity of the post-sedimentation supernatant (7 NTU) clearly demonstrate the potential of this technique. In addition to significantly improving the subsequent solid-liquid separation efficiency, this study also showed that the effluent can be recycled back into the sewer network or utilized for non-portable reuse. The findings obtained from this research will be extremely useful in the scaling up and optimization of the reactor system. Inhaltsverzeichnis Chapter 1: Background, Problem Statement and Outline Chapter 2: Fundamentals of Flocculation and Colloid Stability Chapter 3: Hydrodynamics and Floc Stability in Sheared Systems Chapter 4: Materials and Experimental Methods Chapter 5: Design Concept and Process Description Chapter 6: Mixing and Hydrodynamic Analysis Chapter 7: Optimization of the Micro Processes Chapter 8: Conclusions and Perspectives ...

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Autori Benjamin Oyegbile, Benjamin (Chair of Minerals Processing Oyegbile, Benjamin A. Oyegbile, Oyegbile Benjamin
Editore Taylor & Francis Ltd.
 
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 28.06.2016
Categoria Scienze naturali, medicina, informatica, tecnica > Geoscienze > Altro
 
EAN 9781138028616
ISBN 978-1-138-02861-6
Numero di pagine 122
 
Categorie SCIENCE / Chemistry / Industrial & Technical, TECHNOLOGY & ENGINEERING / Environmental / Water Supply, TECHNOLOGY & ENGINEERING / Environmental / Waste Management, TECHNOLOGY & ENGINEERING / Environmental / Pollution Control, SCIENCE / Chemistry / Physical & Theoretical, TECHNOLOGY & ENGINEERING / Civil / General, TECHNOLOGY & ENGINEERING / Chemical & Biochemical, TECHNOLOGY & ENGINEERING / Electronics / Microelectronics, Pollution control, Water supply and treatment, Industrial chemistry and chemical engineering, Water purification & desalinization, Environmental Process Engineering, Power Consumption, wastewater treatment processes, hydrodynamic modelling, colloid stability, fine particle agglomeration techniques, particle aggregation mechanisms, advanced solids separation, sludge volume index, Agitation Speed, Dry Solids Content, Vorticity Map, Viscous Subrange, Pelleting Process, Vortex Flow Field, Reactor Supernatant, Floc Stability, Vortex Reactors, Structure Formation Process, Orthokinetic Flocculation, Polymer Dose, Kaolin Slurry, Eddy Particle Interactions, Floc Size, Improved Sludge Dewatering, Residual Turbidity, Critical Fluid Velocity, Floc Growth, Flocculation Efficiency, Floc Breakage, Kolmogorov Length Scale, Vortex Pattern, shear reactors
 

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